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Dehydration followed by sham rehydration contributes to reduced neuronal activation in vasopressinergic supraoptic neurons after water deprivation

机译:脱水后进行假补液会导致脱水后血管加压素能超视神经元的神经元活化减少

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摘要

This experiment tested the role of oropharyngeal and gastric afferents on hypothalamic activation in dehydrated rats instrumented with gastric fistulas and allowed to drink water or isotonic saline compared with euhydrated controls (CON). Rats were water-deprived for 48 h (48 WD) or 46 h WD with 2 h rehydration with water (46+W) or isotonic saline (46+S). 46+W and 46+S rats were given water with fistulas open (46+WO/46+SO, sham) or closed (46+WC/46+SC). Compared with CON, water deprivation increased and water rehydration decreased plasma osmolality, while sham rehydration had no effect. Water deprivation increased c-Fos staining in the lamina terminalis. However, none of the sham or rehydration treatments normalized c-Fos staining in the lamina terminalis. Analysis of AVP and c-Fos-positive neurons in the supraoptic nucleus (SON) revealed reduced colocalization in 46+WO and 46+SC rats compared with 48 WD and 46+SO rats. However, 46+WO and 46+SC rats had higher c-Fos staining in the SON than 46+WC or CON rats. Examination of c-Fos in the perinuclear zone (PNZ) revealed that sham and rehydrated rats had increased c-Fos staining to CON, while 48 WD and 46+SO rats had little or no c-Fos staining in this region. Thus, preabsorptive reflexes contribute to the regulation of AVP neurons in a manner independent of c-Fos expression in the lamina terminalis. Further, this reflex pathway may include inhibitory interneurons in the PNZ region surrounding the SON.
机译:该实验测试了口咽和胃传入神经在胃瘘管脱水的大鼠中下丘脑激活的作用,与正常饮食对照组(CON)相比,可以喝水或等渗盐水。将大鼠缺水48 h(48 WD)或46 h WD,并用水(46 + W)或等渗盐水(46 + S)补液2 h。给46 + W和46 + S大鼠开瘘(46 + WO / 46 + SO,假手术)或闭合(46 + WC / 46 + SC)瘘管。与CON相比,缺水增加,水复水降低血浆渗透压,而深水复水没有影响。缺水会增加终板中c-Fos染色。但是,没有假手术或补液治疗可以使终板中的c-Fos染色正常化。分析视上核(SON)中的AVP和c-Fos阳性神经元,与48只WD和46 + SO大鼠相比,在46 + WO和46 + SC大鼠中共定位降低。但是,在46%WO和46 + SC大鼠中SON的c-Fos染色高于46 + WC或CON大鼠。核周区(PNZ)中c-Fos的检查显示,假和复水大鼠的c-Fos染色增至CON,而48 WD和46 + SO大鼠在该区域几乎没有c-Fos染色。因此,吸收前反射以与终板中c-Fos表达无关的方式有助于AVP神经元的调节。此外,该反射途径可包括在SON周围的PNZ区域中的抑制性中间神经元。

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